Abstract:
An air deflection system includes a cabinet, where an air vent is disposed on a side of the cabinet, the air vent is located in a lower part of the side, an air vent is disposed at the top of the cabinet, and the cabinet is provided with a side for cool air to enter; and further includes at least one air deflection cabinet, where an air vent is disposed at the top of the air deflection cabinet, the air-vent-disposed side of the air deflection cabinet clings to the air-vent-disposed side of the cabinet, and the side air vent of the air deflection cabinet is in communication with the side air vent of the cabinet. By means of the air deflection system, bottom warm air is exhausted from the top, which improves efficiency of warm air processing of an equipment room.
Abstract:
A method and an apparatus for clearing a malicious power-consuming application, and a user terminal are provided. An application whose background working power consumption is not less than a power consumption threshold is determined as a malicious power-consuming application; and a wakelock occupying time of each application if a screen is turned off is periodically calculated, and if a background working application's wakelock occupying time is not less than a set time threshold, the application is determined as a malicious power-consuming application.
Abstract:
There is described a method performed by a computing device having first and second touch-sensitive user interfaces. According to this method, when a user input is applied to one of the first and second user interfaces, the computing device detects the user input and determines a force applied by the user input and a type of the user input. The computing device then determines whether to perform a function such as whether to display a virtual trackpad or a virtual keyboard, based on the force, the type of the user input, and a determination whether the user input is applied to a selected one of the first and second user interfaces.
Abstract:
A data processing system includes a computing subsystem and a memory subsystem. In the computing subsystem, a processor is connected to one end of a high-speed parallel bus via a first bus interface. The processor transmits data to the memory subsystem and receives data transmitted through the high-speed parallel bus. The memory subsystem receives and transmits data to the computing subsystem through the high-speed parallel bus.
Abstract:
A task processing method, a processing apparatus, and a computer system are provided. Implementation of the method includes: generating, by a first processing apparatus, a plurality of tasks, and determining task description information of the plurality of tasks, where the task description information of the plurality of tasks is used to indicate a dependency relationship between the plurality of tasks; sending an instruction to a second processing apparatus, where the instruction includes the plurality of tasks and the task description information of the plurality of tasks; and receiving the instruction, and processing the plurality of tasks based on the dependency relationship between the plurality of tasks. The method can effectively reduce a waiting delay, fully exploit a computing capability of an acceleration chip, and improve task processing efficiency.
Abstract:
A resonator includes a resonance layer, a substrate, and a barrier layer. The barrier layer is located on the substrate, and the barrier layer and the substrate form a cavity. The cavity is configured to accommodate the resonance layer. The barrier layer includes a top wall and a side wall, and an inner surface of the side wall surrounds the resonance layer. An outer surface of the side wall includes a groove, and the groove surrounds the side wall.
Abstract:
Methods and devices for generating a slow motion video segment are described. A first set of video frames captures a video view at a first resolution and at a first frame rate. A second set of video frames captures the video view at a second lower resolution, and at a second frame rate that is greater for at least a portion of the second set. At least two high resolution frames are identified in the first set for generating the slow motion video segment. One or more low resolution frames are identified in the second set corresponding to an inter-frame time period between the identified high resolution frames. The slow motion video segment is generated by generating at least one high resolution frame corresponding to the inter-frame time period using interpolation based on the identified high resolution frames and the identified low resolution frames.
Abstract:
A processing method comprises running a first application, displaying a first interface of the first application, wherein the first interface comprises waiting information, displaying, in response to running the first application, first information about a second application according to a first instruction of the waiting information, and continuing running the first application in a background, wherein a first running state of the first application in the background is consistent with a second running state of the first application in a foreground.
Abstract:
A method, applied to an electronic device comprising a camera and a temperature sensor, wherein the method comprises displaying a temperature measurement interface, receiving, from a user, a temperature measurement operation, measuring, in response to the temperature measurement operation and using the temperature sensor, a first temperature of a measured object, collecting, using the camera, a picture of the measured object, determining, based on the picture, a type of the measured object, matching, based on the type, a first temperature algorithm for the measured object, and determining, based on the first temperature and first algorithm, a second temperature of the measured object.
Abstract:
A heat dissipation apparatus includes a heat dissipation panel built in the electronic device. The heat dissipation panel includes a first heat conducting layer, including a first surface and a second surface. The first surface is a surface exposed to the outside when the first heat conducting layer is bent. The second surface is a surface opposite to the first surface. A first region on the first heat conducting layer is used to absorb heat released by a heat emitting component, and conduct the heat to a second region on the first heat conducting layer, to dissipate the heat. The heat dissipation panel also includes first flexible layer, including a third region. The third region adheres to a position that is on the second surface of the first heat conducting layer and that corresponds to a bending region.